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Phase sensitive optical coherence tomography using buffered Fourier Domain Mode Locked lasers at up to 370,000 scans per second

机译:使用缓冲傅立叶域锁模激光的相敏光学相干断层扫描技术,每秒可扫描多达370,000次

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Phase sensitive optical coherence tomography (OCT) can be used to obtain sub-nanometer displacement measurements of biological and non-biological samples. This technique has many applications, including detection of small amplitude surface motion, and high axial resolution OCT phase microscopy. Doppler OCT is another type of phase sensitive imaging, where differential phase measurements are used to detect fluid flow in biological specimens. For all types of phase sensitive OCT, a light source with low phase noise is required in order to provide good displacement sensitivity. High speed imaging is also necessary in order to minimize motion artifacts and enable the detection of fast transient events. In this manuscript, buffered Fourier Domain Mode Locked (FDML) lasers are demonstrated for ultrahigh-speed phase sensitive OCT detection. The lasers are operated at sweep speeds of 42, 117, and 370 kHz, and displacement sensitivities of 39, 52, and 102 pm are achieved, respectively. These displacement sensitivities are comparable to spectrometer-based phase sensitive OCT systems, but acquisition speeds 1.4 - 13x faster are possible using buffered FDML lasers. An additional factor of 2~(1/2) improvement in noise performance is observed for differential phase measurements, which has important implications for Doppler OCT. Dynamic measurements of rapid, small-amplitude piezoelectric transducer motion are demonstrated. In general, buffered FDML lasers provide excellent displacement sensitivities at extremely high sweep speeds for phase sensitive OCT measurements.
机译:相敏光学相干断层扫描(OCT)可用于获得生物和非生物样品的亚纳米位移测量。该技术具有许多应用,包括小振幅表面运动的检测和高轴向分辨率的OCT相显微镜。多普勒OCT是另一种类型的相敏成像,其中差分相位测量用于检测生物样本中的流体流动。对于所有类型的相敏OCT,都需要具有低相位噪声的光源,以提供良好的位移灵敏度。为了最小化运动伪影并实现快速瞬态事件的检测,还需要高速成像。在此手稿中,展示了用于快速超高速相位敏感OCT检测的缓冲傅立叶域锁模(FDML)激光器。激光器以42、117和370 kHz的扫描速度工作,位移灵敏度分别达到39、52和102 pm。这些位移灵敏度可与基于光谱仪的相敏OCT系统媲美,但是使用缓冲FDML激光器可以实现1.4-13倍的采集速度。对于差分相位测量,可以观察到噪声性能提高了2〜(1/2)倍,这对多普勒OCT具有重要意义。演示了快速,小幅度压电换能器运动的动态测量。通常,对于相位敏感的OCT测量,缓冲的FDML激光器在极高的扫描速度下可提供出色的位移灵敏度。

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